2002•Unpublished venueRequires access

Comparison of high speed voltage-scaled conventional and adiabatic circuits

David J. Frank

Open publisher page 9 citations

Abstract

The power versus frequency performance of a micro-pipelined conventional CMOS logic family is compared with that of three similarly pipelined energy-recovering logic families. Using a circuit simulator, the supplies and operating voltages of each family are optimized for minimum power consumption at each frequency. One of the energy-recovering logic families is shown to be capable of substantially lower dissipation than the conventional case, one is comparable, and one is worse.

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What this paper is about

The power versus frequency performance of a micro-pipelined conventional CMOS logic family is compared with that of three similarly pipelined energy-recovering logic families. Using a circuit simulator, the supplies and operating voltages of each family are optimized for minimum power consumption at each frequency. One of the energy-recovering logic families is shown to be capable of substantially lower dissipation than the conventional case, one is comparable, and one is worse.

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OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The power versus frequency performance of a micro-pipelined conventional CMOS logic family is compared with that of three similarly pipelined energy-recovering logic families. Using a circuit simulator, the supplies and operating voltages of each family are optimized for minimum power consumption at each frequency. One of the energy-recovering logic families is shown to be capable of substantially lower dissipation than the conventional case, one is comparable, and one is worse.

Key concepts: Adiabatic circuit, Pull-up resistor, Dissipation, Logic family, Logic level, Logic gate, Pass transistor logic, Voltage

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